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Elevated Klotho promoter methylation is associated with severity of chronic kidney disease
Jing Chen1, Xiaoyan Zhang, Han Zhang
1Laboratory of Kidney Disease, Zhongshan Hospital, Shanghai Medical College, Fudan University, Shanghai, China.
Insights
Klotho promoter hypermethylation is increased in chronic kidney disease (CKD) patients' kidneys and blood. This epigenetic change correlates with disease severity and may serve as a biomarker for kidney damage.
Area of Science:
- Epigenetics
- Nephrology
- Molecular Biology
Background:
- Klotho (KL) expression is reduced in chronic kidney disease (CKD).
- The role of KL promoter hypermethylation in CKD progression is not well understood.
Purpose of the Study:
- To investigate KL promoter methylation in renal and peripheral blood mononuclear cells (PBMC) of CKD patients.
- To correlate methylation levels with clinical and histological CKD severity.
Main Methods:
- Bisulfite pyrosequencing to quantify KL promoter methylation in renal tissue and PBMCs from 47 CKD patients.
- Immunohistochemistry for renal KL protein expression.
- ROC curve analysis to determine PBMC methylation as a biomarker.
Main Results:
- CKD patients showed significantly higher renal and PBMC KL promoter methylation than controls.
- Renal KL methylation inversely correlated with KL protein expression and estimated glomerular filtration rate.
- Methylation positively correlated with tubulointerstitial fibrosis score.
- PBMC KL methylation accurately predicted renal KL hypermethylation (AUC=0.964).
Conclusions:
- KL promoter hypermethylation is associated with CKD.
- The degree of methylation correlates with CKD clinical and histological severity.
- PBMC KL promoter methylation is a potential biomarker for renal KL promoter hypermethylation in CKD.
Abstract:
Klotho (KL) expression is down-regulated in the renal tissues of chronic kidney disease (CKD) animal models and patients with end-stage renal disease. The putative role of KL promoter hypermethylation in the progression of CKD remains unclear. The present study aimed to determine renal and peripheral blood mononuclear cells (PBMC) levels of KL promoter methylation and analyze their relationship with clinical and histological severity in patients with CKD. Using bisulfite pyrosequencing, renal and PBMC levels of KL promoter methylation were quantified in 47 patients with CKD. 47 nephrectomy specimens of patients with renal cell carcinoma and 48 PBMC specimens of healthy volunteers were used as renal tissue and PBMC controls, respectively. Renal expression of KL protein was assayed by immunohistochemistry staining. Receiver operating characteristic (ROC) curve was used to identify the optimal cut-off value of PBMC KL promoter methylation level for renal KL promoter hypermethylation. Higher levels of KL promoter methylation were observed in renal tissue and PBMC in patients with CKD compared with controls (8.79±3.24 vs. 5.17±1.11%, P<0.001; 7.20±2.79 vs. 3.27±0.79%, P<0.001). In these patients, renal KL methylation level correlated inversely with renal KL immunostaining intensity (ρ=-0.794, P<0.001). Estimated glomerular filtration rate correlated inversely with renal and PBMC levels of KL promoter methylation (r=-0.829, P<0.001; r=-0.645, P<0.001), while tubulointerstistial fibrosis score correlated positively (ρ=0.826, P<0.001; ρ=0.755, P<0.001). PBMC KL promoter methylation level correlated positively with renal KL promoter methylation level in patients with CKD (r=0.787, P<0.001). In ROC curve, the area under curve was 0.964 (P<0.001) and the optimal cut-off value was 5.83% with a sensitivity of 93.8% and specificity of 86.7% to predict renal KL promoter hypermethylation. The degree of KL promoter methylation is associated with clinical and histological severity of CKD. PBMC KL promoter methylation level may act as a potential biomarker of renal KL promoter hypermethylation.
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